889 resultados para Forage legume
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•2012 PICES Science: A Note from the Science Board Chairman (pp. 1-6) ◾2012 PICES Awards (pp. 7-9) ◾GLOBEC/PICES/ICES ECOFOR Workshop (pp. 10-15) ◾ICES/PICES Symposium on “Forage Fish Interactions” (pp. 16-18) ◾The Yeosu Declaration, the Yeosu Declaration Forum and the Yeosu Project (pp. 19-23) ◾2013 PICES Calendar (p. 23) ◾Why Do We Need Human Dimensions for the FUTURE Program? (pp. 24-25) ◾New PICES MAFF-Sponsored Project on “Marine Ecosystem Health and Human Well-Being” (pp. 26-28) ◾The Bering Sea: Current Status and Recent Trends (pp. 29-31) ◾Continuing Cool in the Northeast Pacific Ocean (pp. 32, 35) ◾The State of the Western North Pacific in the First Half of 2012 (pp. 33-35) ◾New Leadership in PICES (pp. 36-39)
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This paper is based on an attempt to assemble the existing knowledge of the silverside, Menidia menidia, and to contribute to what is known about the life history of this species. A vast amount of work is needed on the ecological relationships between the food fish and the forage fish. One of the most important forage fishes on the Atlantic Coast is the silverside. To understand the inter-relationships between the food fish and the forage fish it is necessary first to understand the life histories of both. For this reason it is important that the life history of this species be studied.
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多效唑(MET)是一种新型的植物生长调节剂.本文以多杆多穗青饲玉米为材料详细地研究了它征组织培养中的作用和生物学效应,并对它的作用机理也进行了初步的探讨。 研究结果表明:(1)适宜浓度的MET能够提高不同外植体愈伤组织的诱导率;(2)2~4 mg/lMET能改善愈伤组织的质量,提高愈伤组织的分化率、绿苗形成率、根的形成率和正常苗/异常苗的比值;(3)壮苗培养,MEP能使再生苗形态结构和生理等方面均发生较大的变化,并使其生长健壮,根系发达,移裁入土后成活率提高,达80%以上;(4)在再生苗的长期保存中,MET也具有良好的作用效应;(5)在继代培养中,MET处理后,愈伤组织的生长值下降;过氧化物酶活性和IAA氧化酶活性增加, 内源乙烯的释放量上升;外源GA3可逆转MET的作用效应,IAA、kt、ABA没有逆转效应,相反,ABA与MET对抑制愈防组织的生长具有加成效应.MET的作用机班可能是:通过改变细胞内酶的活性和内源激素的含量水平来控制愈伤组织细胞的生长、分化以及再生植株的生长和发育。 MET在玉米组培中所表现出的良好的作用效应表明:对于解决植物组织培养中所普遍存在的一些问题,用MET处理可能会变成一种有效的方法。展示出MET在植物生物技术领域也具有广泛的应用前景。
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In the Caribbean, many coral reef associated fishes have been observed making diel migrations, yet little is known about the detailed movement pathways and space use patterns of individual fish. Often these migrations occur along temporally or spatially consistent corridors that connect preferred resting and foraging habitats. Recent analysis of gut contents from Haemulids and Lutjanids, has provided evidence that these species forage in seagrass beds and other habitats near their coral reef refuges. Few studies have provided direct and spatially explicit evidence of nocturnal migrations and detailed day and night space use patterns for individual fish. This study integrated manual acoustic telemetry to track two common reef species, the bluestriped grunt (Haemulon sciurus) and schoolmaster snapper (Lutjanus apodus) throughout their daily home range. Space use patterns of these species were then examined using Geographical Information System (GIS) tools to link movement behavior to seascape structure derived in a benthic habitat map. This study represents a novel integration of spatial technologies to enhance our understanding of the movement ecology of adult H. sciurus and L. apodus.
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本工作用BT基因、PinⅡ基因和bar基因对青饲玉米、谷子进行了基因转化的研究,并且对转基因的受体、转基因的方法、转化后的筛选、检测及植株再生等问题进行了探讨。 玉米胚性细胞系,包括胚性愈伤组织和胚性细胞悬浮系,可作为基因转化的受体,它亦是原生质体培养的关键。玉米的基因型对胚性细胞系的获得有很大的影响。在相同的培养条件下,九个青饲玉米品系都得到了I型愈伤组织,但仅有两个品系(232和235)得到了胚性细胞系(L32和L35)。幼胚的长度及年龄也是影响诱导形成胚性愈伤组织的一个重要因素,最佳胚长是1-1.5mm,最佳胚龄是授粉后10-12天的幼胚。另外,适当提高蔗糖浓度对胚性细胞悬浮系的建立及保持均有好处。 从玉米原生质体培养获得了再生植株.在此基础上用电激法和PEG法将BT基因导入玉米原生体,发现在原生质体培养过程中,同对照相比,第一次细胞分裂及形成愈伤组织的时间往后推移. 诱导玉米I型愈伤组织没有基因型的限制,可以从大多数玉米品系中得到。并且玉米I型愈伤组织具有极强的分化能力.我们将玉米I型愈伤组织作为基因枪法转化的受体,获得了转基因工程植株。目前,尚未见这方面的报道. 基因枪法转化玉米胚性细胞系,得到抗性愈伤组织的效率约为1/40。用直径约3mm的玉米I型愈伤组织块作基因枪法转化受体,转化后经筛选平均每块可得到1-4个抗性愈伤组织系。用PEG和电激法转化玉米原生质体,转化后原生质体再生愈伤组织中,抗性愈伤组织的得率为9.3%和8.9%, 基因枪法适应完整的细胞和组织的转化,可较快得到抗性植株,在玉米基因转化研究中, 为了较快地得到转化植株,用基因枪法较电激法和PEG法更好,在玉米三种基因转化的受体中(原生质体、胚性细胞系和I型愈伤组织),以I型愈伤组织作受体最好,用它作受体可以避免原生质体培养的困难,克服获得胚性细胞系的基因型的限制。 胚性细胞系对抗菌素的耐受性随继代时间增长而增加.I型愈伤组织对抗菌素的耐受性 同愈伤组织块的大小呈正相关。 由于玉米愈伤组织对卡那霉素的本底抗性较高,所以需要用高浓度(800mg/L)的卡那霉 素进行筛选,过高的选择压力对芽的分化有抑制作用.用电激和PEG处理后的原生质体再生的愈伤组织,经卡那霉素筛选出的抗性愈伤组织未能得到再生植株。而对照则得到了再生植株。用PPT和Hyg筛选出的抗性愈伤组织得到了再生植株. 用PCR和Southern杂交对抗性愈伤组织和再生植株进行检测,证明外源基因已整合到 玉米基因组中。得到了携有BT基因、bar基因或PinⅡ基因的愈伤组织或工程植株。 用豫谷一号的幼穗诱导获得了胚性愈伤组织,基因枪转化后,经PPT筛选得到抗性愈伤组织。每个5cm的培养皿内装有谷子胚性愈伤组织约0.5g,经筛选后可得到5-10块抗性愈伤组织,此PPT抗性的愈伤组织用PCR和Southern杂交检测,证明bar基因已整合到了谷子的基因组中。从转化愈伤组织中已分化出了再生植株。
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To demonstrate the utility of distributional surveys for assessing relative abundance and trends in counts for a discrete area of coastline, aerial survey data from Sarasota County, Florida, USA, were analyzed for the years 1987 to 2006. The study area was divided into 3 regions: the Sarasota Bay Region (SBR; N = 353 surveys), Lemon Bay (N = 368), and the Myakka River (N = 209). Manatee counts varied significantly across seasons (p < 0.0001) for all 3 regions. Manatees within Sarasota County utilized open bays primarily in the warmer months. Such usage may have been influenced by resource availability. Conversely, usage of the Myakka River peaked in winter months when manatees seek warm-water refugia such as Warm Mineral Spring. Marginal means for yearly counts within Lemon Bay and the SBR increased significantly, beginning midway through the survey period (1996) until the early 2000s. In contrast, mean yearly counts within the Myakka River decreased over this time period. After record lows in 2003 for Lemon Bay and the Myakka River, and a considerable decline in 2004 for the SBR, mean yearly counts for all 3 regions showed an increasing trend over the remaining 2 yr of the study. Greater protection of manatee habitat and availability of forage coincided with the increase in numbers of manatees using Sarasota County waters during the 1990s, and the subsequent decline in numbers may be indicative of the increase in mortality in recent years due to watercraft collisions and severe red tide events.
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Information is summarized on juvenile salmonid distribution, size, condition, growth, stock origin, and species and environmental associations from June and August 2000 GLOBEC cruises with particular emphasis on differences related to the regions north and south of Cape Blanco off Southern Oregon. Juvenile salmon were more abundant during the August cruise as compared to the June cruise and were mainly distributed northward from Cape Blanco. There were distinct differences in distribution patterns between salmon species: chinook salmon were found close inshore in cooler water all along the coast and coho salmon were rarely found south of Cape Blanco. Distance offshore and temperature were the dominant explanatory variables related to coho and chinook salmon distribution. The nekton assemblages differed significantly between cruises. The June cruise was dominated by juvenile rockfishes, rex sole, and sablefish, which were almost completely absent in August. The forage fish community during June comprised Pacific herring and whitebait smelt north of Cape Blanco and surf smelt south of Cape Blanco. The fish community in August was dominated by Pacific sardines and highly migratory pelagic species. Estimated growth rates of juvenile coho salmon were higher in the GLOBEC study area than in areas farther north. An unusually high percentage of coho salmon in the study area were precocious males. Significant differences in growth and condition of juvenile coho salmon indicated different oceanographic environments north and south of Cape Blanco. The condition index was higher in juvenile coho salmon to the north but no significant differences were found for yearling chinook salmon. Genetic mixed stock analysis indicated that during June, most of the Chinook salmon in our sample originated from rivers along the central coast of Oregon. In August, chinook salmon sampled south of Cape Blanco were largely from southern Oregon and northern California; whereas most chinook salmon north of Cape Blanco were from the Central Valley in California.
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The increase in harbor seal (Phoca vitulina richardsi) abundance, concurrent with the decrease in salmonid (Oncorhynchus spp.) and other fish stocks, raises concerns about the potential negative impact of seals on fish populations. Although harbor seals are found in rivers and estuaries, their presence is not necessarily indicative of exclusive or predominant feeding in these systems. We examined the diet of harbor seals in the Umpqua River, Oregon, during 1997 and 1998 to indirectly assess whether or not they were feeding in the river. Fish otoliths and other skeletal structures were recovered from 651 scats and used to identify seal prey. The use of all diagnostic prey structures, rather than just otoliths, increased our estimates of the number of taxa, the minimum number of individuals and percent frequency of occurrence (%FO) of prey consumed. The %FO indicated that the most common prey were pleuronectids, Pacific hake (Merluccius productus), Pacific stag-horn sculpin (Leptocottus armatus), osmerids, and shiner surfperch (Cymatogaster aggregata). The majority (76%) of prey were fish that inhabit marine waters exclusively and fish found in marine and estuarine areas (e.g. anadromous spp.) which would indicate that seals forage predominantly at sea and use the estuary for resting and opportunistic feeding. Salmonid remains were encountered in 39 samples (6%); two samples contained identifiable otoliths, which were determined to be from chi-nook salmon (O. tshawytscha). Because of the complex salmonid composition in the Umpqua River, we used molecular genetic techniques on salmonid bones retrieved from scat to discern species that were rare from those that were abundant. Of the 37 scats with salmonid bones but no otoliths, bones were identified genetically as chinook or coho (O. kisutch) salmon, or steelhead trout (O. mykiss) in 90% of the samples.
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The diet of Pacific cod (Gadus macrocephalus) in the area of Pavlof Bay, Alaska, was studied in the early 1980s by Albers and Anderson (1985). They found that the dominant prey species were forage species like pandalid shrimp, capelin (Mallotus villosus), and walleye pollock (Theragra chalcogramma). The shrimp fishery in Pavlof Bay began in 1968 and closed in 1980 because of low shrimp abundance (Ruccio and Worton1). Survey data indicate that, during the period between 1972 and 1997, the abundance of forage species such as pandalid shrimp and capelin declined and higher trophic-level groundfish such as Pacific cod increased. There is a general recognition that a long-term ocean climate shift in the Gulf of Alaska has been partially responsible for the observed reorganization of the community structure (Anderson and Piatt, 1999).
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The effects of seasonal and regional differences in diet composition on the food requirements of Steller sea lions (Eumetopias jubatus) were estimated by using a bioenergetic model. The model considered differences in the energy density of the prey, and differences in digestive efficiency and the heat increment of feeding of different diets. The model predicted that Steller sea lions in southeast Alaska required 45–60% more food per day in early spring (March) than after the breeding season in late summer (August) because of seasonal changes in the energy density of the diets (along with seasonal changes in energy requirements). The southeast Alaska population, at 23,000 (±1660 SD) animals (all ages), consumed an estimated 140,000 (±27,800) t of prey in 1998. In contrast, we estimated that the 51,000 (±3680) animals making up the western Alaska population in the Gulf of Alaska and Aleutian Islands consumed just over twice this amount (303,000 [±57,500] t). In terms of biomass removed in 1998 from Alaskan waters, we estimated that Steller sea lions accounted for about 5% of the natural mortality of gadids (pollock and cod) and up to 75% of the natural mortality of hexagrammids (adult Atka mackerel). These two groups of species were consumed in higher amounts than any other. The predicted average daily food requirement per individual ranged from 16 (±2.8) to 20 (±3.6) kg (all ages combined). Per capita food requirements differed by as much as 24% between regions of Alaska depending on the relative amounts of low–energy-density prey (e.g. gadids) versus high–energy-density prey (e.g. forage fish and salmon) consumed. Estimated requirements were highest in regions where Steller sea lions consumed higher proportions of low–energy-density prey and experienced the highest rates of population decline
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Large (>458 mm) striped bass (Morone saxatilis) are dominant predators in Chesapeake Bay. In recent years, the Chesapeake Bay stock of striped bass has increased dramatically, raising concerns about their predatory impact and their forage requirements. In response to these concerns and the need for more recent ecological studies, this investigation was conducted to characterize feeding habits of large striped bass in Chesapeake Bay. Stomach contents from 1225 striped bass from 458 to 1151 mm TL were examined in the spring and fall of 1997 and 1998. Striped bass consumed 52 different species of vertebrates and invertebrates; however, only a few species of clupeoid and sciaenid fishes dominated diets across both the seasons and size ranges of striped bass examined. Of finfish species, menhaden (Brevoortia tyrannus) was the dominant prey in most areas and gizzard shad (Dorosoma cepedianum) replaced menhaden in importance in lower salinity waters. Spot (Leiostomus xanthurus) and other sciaenid fishes and anadromous herrings (Alosa spp.) also contibuted large percentages of striped bass diet. Although pelagic schooling fishes formed the majority of the diet, benthic fishes contributed a higher percentage to the diet than in previous studies of striped bass diet composition.
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Each spring horseshoe crabs (Limulus polyphemus L.) emerge from Delaware Bay to spawn and deposit their eggs on the foreshore of sandy beaches (Shuster and Botton, 1985; Smith et al., 2002a). From mid-May to early June, migratory shorebirds stopover in Delaware Bay and forage heavily on horseshoe crab eggs that have been transported up onto the beach (Botton et al., 1994; Burger et al., 1997; Tsipoura and Burger, 1999). Thus, estimating the quantity of horseshoe crab eggs in Delaware Bay beaches can be useful for monitoring spawning activity and assessing the amount of forage available to migratory shorebirds.
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草地在世界各种不同的气候带和土壤类型区均有分布,约占陆地面积的24%。尽管二十世纪中叶以来,人类通过各种措施,使氮素由大气圈进入生物圈的量已经翻了一翻,但是,草地生态系统由于没有得到足够的氮素补充,其生产力至少是季节性地受到氮素的制约。我国草原生态系统的退化与氮素匮乏已经引起了广泛重视。尽管一些研究者的工作已经涉及到氮素循环的一些方面,但是关于草原生态系统的氮素平衡过程的系统研究迄今尚未开展。地下器官中贮藏养分的积累是多年生牧草抵御不良环境条件的物质保障,碳水化合物是我国典型草原植物重要的贮藏营养物质。但是关于我国草原生态系统贮藏养分的研究还相当匮乏。值得一提的是,不合理的人类活动也加剧了草地生态系统氮素的损失,甚至对全球环境和人类健康产生了重要影响。为此,我们在中国科学院内蒙古草原生态系统定位研究站的羊草样地设计了氮素添加试验,采用15N稀释法对典型草原羊草群落的氮素吸收利用、氮素平衡进行了研究,并就氮素添加条件下,植物氮素利用与植物竞争的关系、氮素吸收分配与牧草生物产量与品质的关系进行了探讨。同时采用高效液相色谱对羊草群落植物贮藏碳水化合物的种类与含量进行了测定。 15N稀释法的试验结果表明:我国典型草原羊草群落吸收的氮素平均16.41%来源于肥料,83.59%来源于土壤。氮素添加不仅显著促进了羊草群落地上器官对肥料氮索和土壤氮素的吸收量,而且促进了地下器官对肥料氮素和土壤氮素的吸收量。生物量达到最大时,羊草群落吸收的氮素分配到地下器官中的比例平均为74.85%,分配到地上器官中的比例平均为25.15%。植物吸收的肥料氮素在地上和地下器官之间的分配比例约各占50%。 在我国典型草原羊草群落,植物对肥料氮素的回收率仅为31.61%,氮素添加显著影响羊草群落植物对肥料氮素的回收,随着氮素添加量的提高,地上和地下植物器官对肥料氮素的回收量均显著提高。凋落物的肥料氮素回收率为2.92%,地下凋落物的回收率显著高于地上凋落物。肥料氮素的土壤存留率为36.16%,主要分布在地表至40cm的土层范围内(>95%)。各土层存留的标记肥料氮素量均随着氮素添加量的增加而显著提高。肥料氮素的当季损失率为21.77%-43.38%。风险:收益分析表明,在本试验条件下,添加5.25gN/m2与28gN/m2的处理风险大于收益,添加17.5g/m2的处理风险最低,收益最高,在草原生态系统的管理中可以参考。 为了了解羊草群落植物的竞争能力是否对羊草群落植物的相对多度有影响,我们对不同盖度的10个物种的15N吸收速率、15N分配、植物组织氮素含量、单株生物量、根/冠比、氮素生产力等反映植物竞争能力的指标进行了测定和分析。发现向根系的氮素分配比例、根/冠比、和氮素生产力与植物的相对盖度显著正相关,向地上器官的氮素分配比例、氮素吸收速率与相对盖度呈显著负相关,而植物组织氮素含量、和单株生物量与植物相对盖度无关。 试验前,我们认为氮素吸收速率应该与植物的相对多度显著正相关,但是本试验发现却是显著负相关。这一结果说明,高的氮素吸收速率并不能代表较高的竞争能力,而是稀少植物能够与优势植物共存的一种生理机制。 氮素的吸收与分配显著地影响牧草的生物产量和品质。氮素添加提高了羊草生物量,促进了生物量向地上器官的分配比例,降低了向根系的分配比例,使根/冠比显著降低。氮素添加促进了羊草对氮素的吸收以及向茎叶中的分配比例,降低了向根系的分配比例,提高了羊草各器官的氮素含量和地上器官的蛋白质含量,对根系的蛋白质含量无显著影响。本试验条件下,氮素添加水平为17.5gN/m2时,羊草根、茎、叶生物产量均最高。与17.5gN/m2的处理相比较,添加28gN/m2的处理,羊草的生物产量以及牧草蛋白质含量均无显著差异。初步认为,本实验条件下,17. 5gN/m2是较为适宜的氮素添加量。 地下器官中贮藏养分的积累是多年生牧草抵御不良环境条件的物质保障,碳水化合物是我国典型草原植物重要的贮藏营养。采用高效液相色谱(HPLC)对羊草群落地下器官的贮藏性碳水化合物进行了分析。结果表明,羊草群落地下贮藏碳水化合物种类主要包括甘露糖醇、果聚糖、蔗糖、葡萄糖和果糖。其中甘露糖醇是最主要贮藏碳水化合物,约占60%;其次是果聚糖,约占30%。氮素添加量对羊草群落地下贮藏碳水化合物有显著影响。在0~50 g NH4N03. m-2.yr-1范围内,随着氮素添加量的增加,总糖、果聚糖、甘露糖醇的含量均逐渐升高。氮素添加时期对羊草群落地下贮藏碳水化合物含量亦有显著影响。7月初(雨季)添加氮素比4月份(牧草开始返青)更有利于牧草地下贮藏碳水化合物的积累。 对羊草根茎中的贮藏性碳水化合物的测定结果表明,羊草根茎中的贮藏碳水化合物组分主要包括果聚糖、甘露糖醇、蔗糖、葡萄糖和果糖。其中果聚糖是最主要贮藏碳水化合物,约占60%:其次是甘露糖醇,约占20%。氮素添加量对羊草根茎中的贮藏碳水化合物有显著影响。在0~17.5 g N/m2范围内,随着氮素添加量的增加,总糖、果聚糖、甘露糖醇的含量均逐渐升高。氮素添加时期对羊草根茎中的贮藏碳水化合物的含量亦有显著影响。在7月初添加氮素比4月份添加氮素更有利于贮藏碳水化合物的积累。
Resumo:
氮素是植物光合生产的决定性因素,尤其是在沙地草地生态系统中,氮素贫乏往往限制植物的生长发育。因此,研究沙地植物光合作用与叶片N含量之间的关系,以及不同植物功能型氮素利用效率,有助于理解不同植物资源利用效率的差异。以浑善达克沙地分布的80种植物为研究对象,对不同生境(固定沙丘、丘间低地和湿地)、不同生活型(乔、灌、草)、不同光合途径(C3和C4)以及豆科和非豆科植物等功能型进行研究,结果表明:无论在单位叶面积水平还是单位干重水平上的叶片氮含量,均与光合速率成极显著正相关,但单位氮素的光合利用效率在不同生境以及不同功能型之间差异很大;光合氮素利用效率表现为:湿地植物>沙丘>丘间低地植物;草本植物>灌木>乔木;C4草本>C3草本植物,非豆科植物>豆科植物。 为了验证浑善达克沙地豆科植物是否比非豆科植物具有更高的光合潜力,我们比较研究了3种优势豆科植物小叶锦鸡儿(Caragana microphylla)、木岩黄芪(Hedysarum fruticosum var. lignosum)、披针叶黄华(Thermopsis lanceolata)和2种非豆科植物羊草(Leymus chinensis)和黄柳(Salix gordejeviii),结果表明并非所有豆科植物都比非豆科植物有着显著高的光合速率,仅木岩黄芪表现出较高的光合速率,其它两种豆科植物的光合速率和羊草、黄柳的差异并不显著(P>0.05),甚至低于后者,这是因为氮素利用效率(PNUE)在其中起关键作用,通过对影响PNUE的几个主要因素进行分析得出:叶绿素对光能的吸收、光化学转换效率和CO2分压并不是构成豆科和非豆科植物PNUE差异的主要因素,而Rubisco羧化效率决定了所实验的5种植物对氮素利用效率的高低。 木岩黄芪在浑善达克沙地的沙丘上为优势种,甚至成为流动沙丘的先锋种。除了其显著高的氮含量外,对沙丘胁迫生境的光合适应性是我们关注的另一个重点。通过对木岩黄芪和其伴生种黄柳的光反应曲线以及光合日动态的研究,发现木岩黄芪具有显著高的光合速率、水分利用效率和PSII 光化学效率,其忍受中午强光和高温的能力较强(即“光合午休”现象不明显)。另外,该物种还表现出了显著高的光饱和点和低光补偿点。 对木岩黄芪的模拟降雨试验结果表明:气体交换参数以及叶绿素荧光参数均受到干旱和模拟降雨的影响,其中气孔因素和非气孔因素共同决定了干旱条件下木岩黄芪光合速率的降低;但降雨解除干旱后,气孔导度恢复较快,而PSII 潜在活性和PSII 光能转换效率的恢复却比较缓慢。在0-15mm的降雨量范围内,随降雨量的增加各项生理指标不断升高,但大于15mm的降雨量对木岩黄芪影响不大,因此木岩黄芪可被视为低耗水型植物。 对木岩黄芪光合酶的研究结果表明,其C4光合酶的活性很高,磷酸稀醇式丙酮酸羧化酶(PEPcase)、NAD-苹果酸酶(NAD-ME)、NADP-苹果酸酶(NADP-ME)、NAD-苹果酸脱氢酶(NAD-MDH)、NADP-苹果酸脱氢酶(NADP-MDH) 和丙酮酸磷酸双激酶(PPDK)等酶的活性,在整个生育期内为黄柳的5倍以上,但稳定性碳同位素测定结果却表明木岩黄芪为C3植物。因此,我们认为C3豆科植物木岩黄芪体内可能存在着C4光合途径,这种机制使得其对于流动沙丘的胁迫环境有着很强的适应性和很高的资源利用效率。