Ashman Chris, Wilson Rebecca, Mos Michal, Clifton-Brown John, Robson Paul
Institute of Biological, Environmental and Rural Sciences (IBERS), Aberystwyth University, Aberystwyth, United Kingdom.
Energene Seeds Limited, Gogerddan, Aberystwyth University, Aberystwyth, United Kingdom.
Front Plant Sci. 2023 May 30;14:1095838. doi: 10.3389/fpls.2023.1095838. eCollection 2023.
Biomass crops provide significant potential to substitute for fossil fuels and mitigate against climate change. It is widely acknowledged that significant scale up of biomass crops is required to help reach net zero targets. is a leading biomass crop embodying many characteristics that make it a highly sustainable source of biomass but planted area remains low. is commonly propagated rhizome, but efficient alternatives may increase uptake and help diversify the cultivated crop. Using seed-propagate plug plants of has several potential benefits such as improving propagation rates and scale up of plantations. Plugs also provide an opportunity to vary the time and conditions under protected growth, to achieve optimal plantlets before planting. We varied combinations of glasshouse growth period and field planting dates under UK temperate conditions, which demonstrated the special importance of planting date on yield, stem number and establishment rates of . We also propagated in four different commercial plug designs that contained different volumes of substrate, the resulting seedlings were planted at three different dates into field trials. In the glasshouse, plug design had significant effects on above and belowground biomass accumulation and at a later time point belowground growth was restricted in some plug designs. After subsequent growth in the field, plug design and planting date had a significant effect on yield. The effects of plug design on yield were no longer significant after a second growth season but planting date continued to have a significant effect. After the second growth year, it was found that planting date had a significant effect on surviving plants, with the mid-season planting producing higher survival rates over all plug types.Establishment was positively correlated with DM biomass produced in the first growth season. Sowing date had a significant effect on establishment but the impacts of plug design were more nuanced and were significant at later planting dates. We discuss the potential to use the flexibility afforded by seed propagation of plug plants to deliver significant impacts in achieving high yield and establishment of biomass crops during the critical first two years of growth.
生物质作物具有替代化石燃料和缓解气候变化的巨大潜力。人们普遍认识到,需要大规模扩大生物质作物种植规模,以助力实现净零目标。[具体作物名称]是一种主要的生物质作物,具备许多使其成为高度可持续生物质来源的特性,但种植面积仍然较低。[具体作物名称]通常通过根茎繁殖,但高效的替代方法可能会增加种植量,并有助于使种植作物多样化。使用种子繁殖的穴盘苗种植[具体作物名称]有几个潜在好处,比如提高繁殖率和扩大种植园规模。穴盘苗还提供了一个机会,可以改变在保护生长条件下的时间和条件,以便在种植前培育出最佳的幼苗。我们在英国温带条件下改变了温室生长周期和田间种植日期的组合,这证明了种植日期对[具体作物名称]的产量、茎数和定植率具有特殊重要性。我们还在四种不同的商业穴盘设计中繁殖[具体作物名称],这些设计包含不同体积的基质,将由此产生的幼苗在三个不同日期种植到田间试验中。在温室中,穴盘设计对地上和地下生物量积累有显著影响,在稍后的时间点,一些穴盘设计中地下生长受到限制。在田间后续生长后,穴盘设计和种植日期对产量有显著影响。在第二个生长季节后,穴盘设计对产量的影响不再显著,但种植日期继续产生显著影响。在第二个生长年份之后,发现种植日期对存活植株有显著影响,季中种植在所有穴盘类型中产生的存活率更高。定植与第一个生长季节产生的干物质生物量呈正相关。播种日期对定植有显著影响,但穴盘设计的影响更为细微,在较晚的种植日期才显著。我们讨论了利用穴盘苗种子繁殖所提供的灵活性,在生物质作物生长的关键头两年实现高产和定植方面产生重大影响的潜力。