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首页> 外文期刊>Annals of Applied Biology >Decimal growth stages for precision wheat production in changing environments?
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Decimal growth stages for precision wheat production in changing environments?

机译:在不断变化的环境中精确小麦生产的十进制生长阶段?

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The utility of the decimal growth stage (DGS) scoring system for cereals is reviewed. The DGS is the most widely used scale in academic and commercial applications because of its comprehensive coverage of cereal developmental stages, the ease of use and definition provided and adoption by official agencies. The DGS has demonstrable and established value in helping to optimise the timing of agronomic inputs, particularly with regard to plant growth regulators, herbicides, fungicides and soluble nitrogen fertilisers. In addition, the DGS is used to help parameterise crop models, and also in understanding the response and adaptation of crops to the environment. The value of the DGS for increasing precision relies on it indicating, to some degree, the various stages in the development of the stem apex and spike. Coincidence of specific growth stage scores with the transition of the apical meristem from a vegetative to a reproductive state, and also with the period of meiosis, is unreliable. Nonetheless, in pot experiments it is shown that the broad period of booting (DGS 41-49) appears adequate for covering the duration when the vulnerability of meiosis to drought and heat stress is exposed. Similarly, the duration of anthesis (61-69) is particularly susceptible to abiotic stresses: initially from a fertility perspective, but increasingly from a mean grain weight perspective as flowering progresses to DGS 69 and then milk development. These associations with DGS can have value at the crop level of organisation: for interpreting environmental effects, and in crop modelling. However, genetic, biochemical and physiological analysis to develop greater understanding of stress acclimation during the vegetative state, and tolerance at meiosis, does require more precision than DGS can provide. Similarly, individual floret analysis is needed to further understand the genetic basis of stress tolerance during anthesis.
机译:审查了谷物的十进制增长阶段(DGS)评分系统的实用性。 DGS是在学术和商业应用中使用最广泛的量表,因为它全面涵盖了谷物的发育阶段,易于使用和定义,并由官方机构采用。 DGS在帮助优化农学投入时间方面具有可证明的价值,尤其是在植物生长调节剂,除草剂,杀真菌剂和可溶性氮肥方面。此外,DGS还用于帮助参数化作物模型,以及帮助理解作物对环境的响应和适应性。 DGS的价值在于提高精度,在某种程度上表明了茎尖和穗的发育的各个阶段。根尖分生组织从营养状态到生殖状态的过渡以及减数分裂时期的特定生长阶段分数的一致性是不可靠的。但是,在盆栽实验中,显示了较长的启动时间(DGS 41-49)似乎足以覆盖减数分裂对干旱和高温胁迫的脆弱性暴露的持续时间。类似地,花期(61-69)的持续时间尤其容易受到非生物胁迫的影响:最初是从生育力的角度出发,但随着开花进展到DGS 69,然后从牛奶发育,从平均粒重的角度来看,这一点越来越多。与DGS的这些关联在组织的作物一级具有价值:用于解释环境影响和作物建模。但是,遗传,生化和生理分析需要对植物生长过程中的压力适应和减数分裂的耐受性有更深入的了解,这确实比DGS提供的精度更高。同样,需要进行个体小花分析,以进一步了解花期耐胁迫性的遗传基础。

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